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The Mating Type Locus (MAT) and Sexual Reproduction of Cryptococcus heveanensis: Insights into the Evolution of Sex and Sex-Determining Chromosomal Regions in Fungi

机译:隐球菌的交配型基因座(MAT)和有性繁殖:对真菌的性别和性别决定染色体区域的演变的见解。

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摘要

Mating in basidiomycetous fungi is often controlled by two unlinked, multiallelic loci encoding homeodomain transcription factors or pheromones/pheromone receptors. In contrast to this tetrapolar organization, Cryptococcus neoformans/Cryptococcus gattii have a bipolar mating system, and a single biallelic locus governs sexual reproduction. The C. neoformans MAT locus is unusually large (>100 kb), contains >20 genes, and enhances virulence. Previous comparative genomic studies provided insights into how this unusual MAT locus might have evolved involving gene acquisitions into two unlinked loci and fusion into one contiguous locus, converting an ancestral tetrapolar system to a bipolar one. Here we tested this model by studying Cryptococcus heveanensis, a sister species to the pathogenic Cryptococcus species complex. An extant sexual cycle was discovered; co-incubating fertile isolates results in the teleomorph (Kwoniella heveanensis) with dikaryotic hyphae, clamp connections, septate basidia, and basidiospores. To characterize the C. heveanensis MAT locus, a fosmid library was screened with C. neoformans/C. gattii MAT genes. Positive fosmids were sequenced and assembled to generate two large probably unlinked MAT gene clusters: one corresponding to the homeodomain locus and the other to the pheromone/receptor locus. Strikingly, two divergent homeodomain genes (SXI1, SXI2) are present, similar to the bE/bW Ustilago maydis paradigm, suggesting one or the other homeodomain gene was recently lost in C. neoformans/C. gattii. Sequencing MAT genes from other C. heveanensis isolates revealed a multiallelic homeodomain locus and at least a biallelic pheromone/receptor locus, similar to known tetrapolar species. Taken together, these studies reveal an extant C. heveanensis sexual cycle, define the structure of its MAT locus consistent with tetrapolar mating, and support the proposed evolutionary model for the bipolar Cryptococcus MAT locus revealing transitions in sexuality concomitant with emergence of a pathogenic clade. These studies provide insight into convergent processes that independently punctuated evolution of sex-determining loci and sex chromosomes in fungi, plants, and animals.
机译:担子菌真菌中的交配通常受编码同源域转录因子或信息素/信息素受体的两个未链接的多等位基因座控制。与这种四极组织相反,新隐球菌/加蒂隐球菌具有双极交配系统,并且一个双等位基因座控制着性繁殖。新孢梭菌的MAT基因座异常大(> 100 kb),包含> 20个基因,并增强了毒力。先前的比较基因组研究提供了关于这种不寻常的MAT基因座可能如何进化的见解,其中涉及基因获取到两个未连锁的基因座并融合到一个连续的基因座中,从而将祖先的四极系统转变为双极系统。在这里,我们通过研究橡胶隐球菌heveanensis(致病隐球菌物种复合体的姊妹物种)测试了该模型。发现了一个现存的性循环;共同孵育可育分离物会产生带有双核菌丝,钳夹连接,分隔芽胞和担子孢子的长形体(Kwoniella heveanensis)。为了表征C. heveanensis MAT基因座,用新孢梭菌/ C筛选了一个粘粒文库。加蒂MAT基因。对正性质粒进行测序和组装,以产生两个可能未连接的大型MAT基因簇:一个对应于同源域基因座,另一个对应于信息素/受体基因座。引人注目的是,存在两个不同的同源域基因(SXI1,SXI2),类似于bE / bW Ustilago maydis范式,表明一个或另一个同源域基因最近在新孢梭菌/ C中丢失。加蒂。对来自其他橡胶树的分离株的MAT基因进行测序后,发现了一个多等位基因同源域基因座和至少一个双等位信息素/受体基因座,类似于已知的四极物种。综上所述,这些研究揭示了现存的橡胶树(C. heveanensis)性周期,定义了其与四极交配一致的MAT基因座的结构,并支持了拟议的双极隐球菌MAT基因座进化模型,揭示了性行为的转变与病原体的出现有关。这些研究提供了对收敛过程的见解,该过程独立地标记了真菌,植物和动物中性别决定基因座和性染色体的进化。

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